Abstract:
A method for proactively creating an image product includes capturing an image of an object in a first environment by a device, storing a library of personalized products each characterized by a product type, automatically recognizing the object in the image as having a product type associated with the library of personalized products, automatically creating a design for the personalized product of the product type using personalized content, automatically displaying the design of the personalized product of the product type incorporating the selected photo in the first environment on the device, and manufacturing a physical product based on the design of the personalized product.
Abstract:
An image processing device includes a controller, a device information generator that generates device information including identification information of the image processing device, and a job executor that executes a job at a predetermined setting based on setting information for job execution sent from a terminal device, wherein the controller displays the generated device information on the terminal device and, based on the setting information for job execution sent from the terminal device that read the displayed device information, controls the job executor to output the job at the predetermined setting.
Abstract:
A control board configured to be mountable to a first image forming apparatus and to a second image forming apparatus of a type different from a type of the first image forming apparatus, the first image forming apparatus including a first load, the second image forming apparatus including a second load having a function different from a function of the first load. The control board comprising a connector to which the first load is to be connected in a case where the control board is mounted to the first image forming apparatus, and to which the second load is to be connected in a case where the control board is mounted to the second image forming apparatus, a common drive circuit configured to drive the first load and the second load via the connector, and one or more processors.
Abstract:
A decoding device may include a processor that may include a core component configured to: analyze watermark metadata to identify a watermark ROI from among multiple candidate ROIs in response to generation of the watermark metadata, determine whether rectification is to be performed within the watermark ROI, perform watermark decoding with the rectified watermark ROI data to decode data encoded within a digital watermark within the rectified watermark ROI in response to performance of the rectification, and transmit the data to a server via a network in response to successful decode of the data. The processor may also include a SIMD component configured to perform at least one of: a watermark transform with the captured image to generate the watermark metadata, and the rectification within the watermark ROI to generate the rectified watermark ROI data in response to the determination by the core component to perform the rectification.
Abstract:
In an image forming apparatus in which a first board including a first central processing unit (CPU) and a second board including a second CPU communicate with each other to control image processing, a monitoring unit monitors whether processing executed by the second CPU is normal. If the monitoring unit determines that the processing executed by the second CPU is not normal, a notification unit notifies the first CPU. The first CPU resets the second board according to the notification.
Abstract:
A method for proactively creating an image product includes storing a library of specification terms for image products by a computer system, receiving a command from a user, tokenizing the command into a plurality of tokens by the computer system, matching one or more of the tokens to the specification terms in the library to determine specification parameters for an image product by the computer system, automatically identifying images based on the specification parameters by the computer system, and automatically creating a design for the image product that incorporates at least some of the images identified based on the specification parameters.
Abstract:
An image forming apparatus includes a processor including a CPU formed with a plurality of cores, the CPU performing processes, wherein a CPU core managing unit operates at least one predetermined core by a first control method involving relatively frequent process switching through task switching, and operates the other one or more cores than the at least one predetermined core by a second control method involving relatively less frequent process switching, and when a first process requiring communication with a device outside the processor and a second process not requiring communication with a device outside the processor are performed in parallel, the CPU core managing unit causes the at least one predetermined core to perform the first process, and causes the at least one predetermined core and the other one or more cores to perform the second process.
Abstract:
A control device includes an apparatus controller that is connected to at least one apparatus and includes a first memory which stores data for controlling the driving of the apparatus and data indicating a state of the apparatus and a reading and transmitting unit which reads each data item stored in the first memory and transmits the read data, a main controller that includes a central processing unit, a second memory, and a writing unit which writes the data transmitted from the apparatus controller to the second memory, and a full-duplex serial bus that connects the main controller and the apparatus controller. The reading and transmitting unit and the writing unit operate such that each data item stored in the first memory is read, transmitted, and stored in the second memory in a cycle equal to or less than a count cycle of a system timer.
Abstract:
A digital camera is provided having an image sensor for imaging a scene, a processor for processing the imaged scene in accordance with a programmable scene transformation requirement, and a printer having a consumables cartridge and a printhead for printing the processed scene directly from the processor onto print media of the cartridge.
Abstract:
A portable hand-held device is provided having an image sensor for capturing images, and a processor chip for image processing the images captured by the image sensor. The processor chip has an on-chip interface for receiving the captured images and four interconnected processing units configured to process the received images.